Department of Integrative Medical Biology, Umeå University, SE-901 87 Umeå, Sweden.
Department of Surgical and Perioperative Science, Section of Hand and Plastic Surgery, Umeå University, SE-901 87 Umeå, Sweden.
Int J Mol Sci. 2022 Aug 6;23(15):8746. doi: 10.3390/ijms23158746.
Injuries to large peripheral nerves are often associated with tissue defects and require reconstruction using autologous nerve grafts, which have limited availability and result in donor site morbidity. Peripheral nerve-derived hydrogels could potentially supplement or even replace these grafts. In this study, three decellularization protocols based on the ionic detergents sodium dodecyl sulfate (P1) and sodium deoxycholate (P2), or the organic solvent tri-n-butyl phosphate (P3), were used to prepare hydrogels. All protocols resulted in significantly decreased amounts of genomic DNA, but the P2 hydrogel showed the best preservation of extracellular matrix proteins, cytokines, and chemokines, and reduced levels of sulfated glycosaminoglycans. In vitro P1 and P2 hydrogels supported Schwann cell viability, secretion of VEGF, and neurite outgrowth. Surgical repair of a 10 mm-long rat sciatic nerve gap was performed by implantation of tubular polycaprolactone conduits filled with hydrogels followed by analyses using diffusion tensor imaging and immunostaining for neuronal and glial markers. The results demonstrated that the P2 hydrogel considerably increased the number of axons and the distance of regeneration into the distal nerve stump. In summary, the method used to decellularize nerve tissue affects the efficacy of the resulting hydrogels to support regeneration after nerve injury.
大周围神经损伤常伴有组织缺损,需要使用自体神经移植物进行重建,而自体神经移植物的可用性有限,并导致供体部位发病率增加。周围神经源性水凝胶有可能补充甚至替代这些移植物。在这项研究中,使用了基于离子去污剂十二烷基硫酸钠(P1)和脱氧胆酸钠(P2)或有机溶剂三丁基磷酸酯(P3)的三种脱细胞化方案来制备水凝胶。所有方案均导致基因组 DNA 的含量显著降低,但 P2 水凝胶显示出对细胞外基质蛋白、细胞因子和趋化因子的最佳保留以及硫酸化糖胺聚糖水平的降低。体外 P1 和 P2 水凝胶支持施万细胞的活力、VEGF 的分泌和神经突的生长。通过植入填充有水凝胶的聚己内酯管来修复大鼠 10mm 长坐骨神经间隙,然后使用扩散张量成像和神经元和神经胶质标志物免疫染色进行分析,进行了手术修复。结果表明,P2 水凝胶显著增加了轴突数量和再生进入远端神经残端的距离。总之,用于脱细胞化神经组织的方法会影响所得到的水凝胶在神经损伤后支持再生的效果。